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Water soluble molecular switches of fluorescence based on the Ni-lll/Ni-ll redox change

机译:基于Ni-III / Ni-II氧化还原变化的水溶性荧光分子开关

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摘要

The water soluble Ni-II complexes of the cyclam derivatives with 1,3-benzodioxole and 1,2,3-trimethoxybenzene display the fluorescent emission typical of the covalently linked fluorophores, which results from a charge transfer excited state. On oxidation to Nil", the fluorescence is completely quenched due to the occurrence of an electron, transfer (eT) process from the excited fluorogenic fragment FI* to the oxidized metal. Thus, fluorescence can be switched off/on at will, for several cycles, by consecutively oxidizing and reducing the metal center, in controlled potential electrolysis experiments both in acetonitrile and in aqueous 0.1 M HClO4. Occurrence of an eT process from FI* to Ni-II ultimately depends upon the easy oxidation of FI to FI+, whereas failure of the occurrence of an eT process from Ni-II to FI* has to be ascribed to the particular resistance of FI fragments to the reduction. [References: 47]
机译:Cyclam衍生物与1,3-苯并二恶唑和1,2,3-三甲氧基苯的水溶性Ni-II配合物表现出共价连接的荧光团的典型荧光发射,这是由电荷转移激发态引起的。在氧化为Nil“时,由于发生了从激发的荧光片段FI *到氧化金属的电子转移(eT)过程,荧光被完全淬灭。因此,可以随意关闭/打开荧光通过在乙腈和0.1 M HClO4水溶液中的受控电势电解实验中,通过连续氧化和还原金属中心进行循环,从FI *到Ni-II的eT过程的发生最终取决于FI容易氧化为FI +,而从Ni-II到FI *发生eT过程失败的原因必须归因于FI碎片对还原的特殊抗性[参考文献:47]

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